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M

Mikhail A. Vovk

Researcher at Saint Petersburg State University

Publications -  26
Citations -  362

Mikhail A. Vovk is an academic researcher from Saint Petersburg State University. The author has contributed to research in topics: Dendrimer & Chemistry. The author has an hindex of 10, co-authored 22 publications receiving 212 citations.

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Complexation of κ-carrageenan with gelatin in the aqueous phase analysed by 1H NMR kinetics and relaxation.

TL;DR: It is hypothesized that at higher concentration of PECs the hydrogel structure network is stabilized by three types of nodes: triple helics of gelatin and intra-/inter-molecular double helices of κ-carrageenan, corresponding to a coil→helix transition and subsequent aggregation of helices.
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The Universal Soldier: Enzymatic and Non-Enzymatic Antioxidant Functions of Serum Albumin.

TL;DR: It has been concluded that it is fundamentally possible to regulate the antioxidant properties of albumin with various ligands, and the binding and/or enzymatic features of the protein by changing its redox status.
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Effect of water content on structural and phase behavior of water-in-oil (n-decane) microemulsion system stabilized by mixed nonionic surfactants SPAN 80/TWEEN 80

TL;DR: In this paper, the microstructure and diffusion of the components of water-in-n-decane Winsor IV microemulsions stabilized by a mixture of nonionic surfactants were investigated by viscosimetry, PGSTE NMR and DLS.
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Formation of κ-carrageenan–gelatin polyelectrolyte complexes studied by 1H NMR, UV spectroscopy and kinematic viscosity measurements

TL;DR: The intermolecular interactions between an anionic poly Saccharide from the red algae κ-carrageenan and a gelatin polypeptide, forming stoichiometric polysaccharide-polypeptides (bio)polyelectrolyte complexes in the aqueous phase, were examined.
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Solid-state 13C NMR of carbon nanostructures (milled graphite, graphene, carbon nanotubes, nanodiamonds, fullerenes) in 2000–2019: a mini-review

TL;DR: A brief overview of the literature on solid-state 13C NMR spectra of carbon nanostructures can be found in this article, with a focus on milled graphite and its oxide.